CN215288681U - Refrigeration device is used in tea-seed oil processing - Google Patents

Refrigeration device is used in tea-seed oil processing Download PDF

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Publication number
CN215288681U
CN215288681U CN202121398051.6U CN202121398051U CN215288681U CN 215288681 U CN215288681 U CN 215288681U CN 202121398051 U CN202121398051 U CN 202121398051U CN 215288681 U CN215288681 U CN 215288681U
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refrigeration
tank
scraping
refrigerating
freezing
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CN202121398051.6U
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Chinese (zh)
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周飞
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Zhejiang Shancharun Biotechnology Co ltd
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Zhejiang Shancharun Biotechnology Co ltd
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Abstract

The utility model relates to the technical field of refrigeration devices, in particular to a refrigeration device for processing tea seed oil, which comprises a refrigeration tank and a refrigeration mechanism connected with the refrigeration tank and used for injecting refrigerating fluid into the refrigeration tank, wherein the refrigeration tank is provided with an oil inlet and an oil outlet, and the refrigeration device also comprises a cleaning and scraping mechanism used for cleaning and scraping the inner side wall of the refrigeration tank; clear scrape the mechanism including rotate the pivot of connection in freezing jar, install and be used for driving the rotatory motor of pivot, fixed mounting in the epaxial connecting rod of pivot on freezing jar to and fixed mounting on the connecting rod and one side and freezing jar inside wall inconsistent doctor-bar subassembly that is used for scraping freezing jar inside wall. In freezing process, can be rotatory by motor drive pivot, and then drive doctor-bar subassembly rotary motion, so doctor-bar subassembly alright constantly scrape the inside wall of freezing jar, will freeze the in-process and separate out the crystallization of adhering to on freezing jar inside wall and scrape and fall to improve freezing cooling effect.

Description

Refrigeration device is used in tea-seed oil processing
Technical Field
The utility model relates to a refrigerating plant technical field especially relates to a refrigerating plant is used in tea-seed oil processing.
Background
Tea seed oil is taken as common vegetable oil and is deeply loved by the masses.
During the processing and production of tea seed oil, a small amount of wax is dissolved in the tea seed oil, and when the oil temperature is reduced, the wax can be separated out in a crystallization mode to affect the overall quality of the oil, so the wax in the tea seed oil can be separated out in advance in a freezing mode to form crystals, and finally, the filtration is carried out.
Generally, the freezing process is performed in a freezing tank, but in actual use, precipitated crystals adhere to the inner side wall of the freezing tank, and the freezing and cooling effects are affected, so that improvement is needed.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a tea-seed oil processing is with refrigerating plant.
In order to solve the technical problem, the technical scheme of the utility model is that:
a refrigeration device for processing tea seed oil comprises a refrigeration tank and a refrigeration mechanism connected with the refrigeration tank and used for injecting refrigerating fluid into the refrigeration tank, wherein the refrigeration tank is provided with an oil inlet and an oil outlet, and the refrigeration device also comprises a scraping mechanism used for scraping the inner side wall of the refrigeration tank; clear scrape the mechanism including rotate the pivot of connection in freezing jar, install and be used for driving the rotatory motor of pivot, fixed mounting in the epaxial connecting rod of pivot on freezing jar to and fixed mounting on the connecting rod and one side and freezing jar inside wall inconsistent doctor-bar subassembly that is used for scraping freezing jar inside wall.
The advantage of this scheme of adoption lies in:
at first, through setting up the doctor-bar subassembly of scraping freezing jar inside wall in this scheme, so at freezing in-process, can be rotatory by motor drive pivot, and then drive doctor-bar subassembly rotary motion, so doctor-bar subassembly alright constantly scrape the inside wall of freezing jar, appear out the crystallization of adhering to on freezing jar inside wall in the freezing process and scrape and fall to improve freezing cooling effect.
Secondly, the utility model discloses in install in the pivot at the doctor-bar subassembly through the connecting rod, consequently the pivot can also drive the connecting rod and rotate thereupon together in the rotation of drive doctor-bar subassembly, so the connecting rod alright stir the fluid in freezing jar for fluid stirs in freezing jar, with the efficiency that improves freezing crystallization.
Further, the scraping blade assembly comprises a mounting plate fixedly mounted at one end, far away from the rotating shaft, of the connecting rod and a scraping blade fixedly mounted on the mounting plate and used for scraping the inner side wall of the freezing tank.
Further, the scraping sheet is made of a flexible material.
Further, the freezing tank comprises an outer tank body, an inner tank body and a sealing plate arranged at the upper end of the inner tank body, and the oil inlet is arranged on the sealing plate; the oil outlet is arranged at the bottom of the inner tank body and extends out of the outer tank body; the scraping mechanism is used for scraping the inner side wall of the inner tank body; an interlayer space is formed between the outer tank body and the inner tank body at intervals; and a spiral blade is arranged in the interlayer space, and a spiral flow channel for flowing of the refrigerating fluid is formed in the interlayer space through the spiral blade.
Further, the refrigerating mechanism comprises a liquid storage tank for storing refrigerating fluid, a water pump with a liquid inlet end communicated with the liquid storage tank, and a refrigerating unit for refrigerating the refrigerating fluid in the liquid storage tank; the liquid outlet end of the water pump is communicated with the upper part of the interlayer space through a liquid inlet pipe; the lower part of the interlayer space is communicated with the liquid storage tank through a liquid return pipe.
Other advantages and effects of the present invention are specifically described in the detailed description section.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a cross-sectional view of the present invention;
fig. 3 is a schematic view of the internal structure of the freezing cylinder.
Reference numerals: 1. a freezing tank; 11. an outer tank body; 12. an inner tank body; 121. an oil inlet; 122. an oil outlet; 13. closing the plate; 14. an interlayer space; 15. a helical blade; 2. a refrigeration mechanism; 21. a liquid storage tank; 22. a refrigeration unit; 23. a water pump; 24. a liquid inlet pipe; 25. a liquid return pipe; 3. a scraping mechanism; 31. A rotating shaft; 32. a motor; 33. a connecting rod; 34. a wiper blade assembly; 341. mounting a plate; 342. and (4) scraping the blade.
Detailed Description
The following detailed description of the embodiments of the present invention is made with reference to the accompanying drawings, so that the technical solution of the present invention can be more easily understood and grasped.
Example (b):
as shown in fig. 1, the present embodiment provides a refrigeration device for processing tea seed oil, which includes a refrigeration tank 1, and a refrigeration mechanism 2 connected to the refrigeration tank 1 for injecting a refrigerating fluid into the refrigeration tank 1.
Freezing jar 1 mainly used holds tea-seed oil in order to carry out the refrigeration crystallization, and its concrete structure is:
referring to fig. 2 and 3, the freezing cylinder 1 includes an outer cylinder 11, an inner cylinder 12, and a sealing plate 13 disposed at an upper end of the inner cylinder 12, the inner cylinder 12 and the outer cylinder 11 are both cylindrical and coaxially disposed, and the sealing plate 13 covers an upper end of the inner cylinder 12 to shield an opening at an upper end of the inner cylinder 12; an oil inlet 121 is formed in the sealing plate 13, tea seed oil is introduced into the inner tank 12 through the oil inlet 121, an oil outlet 122 is formed in the bottom of the inner tank 12, it is worth to say that the oil outlet 122 is a pipeline communicated with the bottom of the inner tank 12, the other end of the pipeline extends out of the outer tank 11, a valve is arranged on the oil outlet 122, after freezing crystallization is completed, the valve is opened, and oil and crystals in the inner tank 12 are discharged through the oil outlet 122 so as to perform a subsequent filtering process.
An interlayer space 14 is formed between the outer tank body 11 and the inner tank body 12 at intervals; be equipped with helical blade 15 in the intermediate layer space 14, helical blade 15 encircles at inner tank 12 week side, and its inside is fixed with inner tank 12 outer wall, and the outside is fixed with outer tank 11 inner wall, through helical blade 15 forms a spiral flow path that supplies the frozen liquid to flow in making intermediate layer space 14. The refrigerating fluid guided out by the refrigerating mechanism 2 flows in the spiral flow passage, so that the refrigerating fluid can be fully contacted with the side wall of the inner tank body 12 to refrigerate and freeze the oil liquid in the inner tank body 12.
It is worth mentioning that in order to reduce the loss of cold, a layer of thermal insulation material may be applied on the outer wall or the inner wall of the outer tank 11.
The refrigerating device also comprises a cleaning and scraping mechanism 3 for cleaning and scraping the inner side wall of the refrigerating tank 1, and particularly for cleaning and scraping the inner side wall of the inner tank body 12; the scraping mechanism 3 comprises a rotating shaft 31 rotatably connected in the inner tank 12, a motor 32 fixedly mounted on the sealing plate 13 and used for driving the rotating shaft 31 to rotate, a plurality of connecting rods 33 fixedly mounted on the rotating shaft 31, and a scraping blade assembly 34 fixedly mounted on the connecting rods 33 and having one side abutting against the inner side wall of the inner tank 12 and used for scraping the inner side wall of the freezing tank 1.
Through setting up doctor-bar subassembly 34 of scraping freezing jar 1 inside wall in this scheme, so at freezing in-process, can be rotatory by motor 32 drive pivot 31, and then drive doctor-bar subassembly 34 rotary motion, so doctor-bar subassembly 34 alright constantly scrape the inside wall of freezing jar 1, will freeze the in-process and appear out the crystallization of attaching to on freezing jar 1 inside wall and scrape and fall to improve freezing cooling effect.
Secondly, the utility model discloses in install in pivot 31 through connecting rod 33 at doctor-bar subassembly 34, consequently pivot 31 is in the rotatory while of drive doctor-bar subassembly 34, still can drive connecting rod 33 and rotate along with it, so connecting rod 33 alright stir the fluid in freezing jar 1 for fluid stirs in freezing jar 1, with the efficiency that improves freezing crystallization.
In this embodiment, the wiper blade assembly 34 includes a mounting plate 341 fixedly mounted on an end of the connecting rod 33 away from the rotating shaft 31, and a wiper blade 342 fixedly mounted on the mounting plate 341 for wiping an inner sidewall of the inner tank 12. The crystals adhered to the inner sidewall of the inner can 12 are scraped off by a scraper 342 rotating with the rotation shaft 31.
In order to reduce the damage of the scraping blade 342 to the inner wall of the inner tank 12, in this embodiment, the scraping blade 342 is made of a flexible material, such as a rubber material; the flexible scraper 342 has flexibility, so that it can not only be attached to the inner wall of the inner tank 12, but also reduce the damage to the inner wall of the inner tank 12 during scraping.
In this embodiment, the refrigeration mechanism 2 includes a liquid storage tank 21 for storing a refrigerating fluid, a water pump 23 having a liquid inlet end communicated with the liquid storage tank 21, and a refrigeration unit 22 for refrigerating the refrigerating fluid in the liquid storage tank 21; the liquid outlet end of the water pump 23 is communicated with the upper part of the interlayer space 14 through a liquid inlet pipe 24; the lower part of the interlayer space 14 is communicated with the liquid storage tank 21 through a liquid return pipe 25.
So, during operation, the cryogenic fluid after refrigerating unit 22 cools in the liquid reserve tank 21 is extracted to water pump 23 to lead to the upper end of intermediate layer space 14 with the cryogenic fluid through feed liquor pipe 24, the cryogenic fluid that gets into in intermediate layer space 14 can flow downwards along the spiral runner that helical blade 15 formed, at last in the lower part of intermediate layer space 14 the liquid reserve tank 21 of reentrant flow of liquid return pipe 25 in by refrigerating unit 22 cooling once more, so circulation is reciprocal, alright make the cryogenic fluid that the temperature is lower flow throughout in the spiral runner, in order to carry out the frozen crystallization to the cryogenic fluid in the internal jar body 12.
As for the refrigerating unit 22, there are many documents disclosing the structure and principle thereof in the prior art, and therefore, the detailed description thereof is omitted here.
Above only the typical example of the utility model discloses, in addition, the utility model discloses can also have other multiple concrete implementation manners, all adopt the technical scheme that equivalent replacement or equivalent transform formed, all fall in the utility model discloses the scope of claiming.

Claims (5)

1. A refrigeration device for processing tea seed oil comprises a refrigeration tank and a refrigeration mechanism connected with the refrigeration tank and used for injecting refrigerating fluid into the refrigeration tank, wherein the refrigeration tank is provided with an oil inlet and an oil outlet; clear scrape the mechanism including rotate the pivot of connection in freezing jar, install and be used for driving the rotatory motor of pivot, fixed mounting in the epaxial connecting rod of pivot on freezing jar to and fixed mounting on the connecting rod and one side and freezing jar inside wall inconsistent doctor-bar subassembly that is used for scraping freezing jar inside wall.
2. The tea seed oil processing refrigeration device as claimed in claim 1, wherein the scraping blade assembly comprises a mounting plate fixedly mounted at one end of the connecting rod away from the rotating shaft, and a scraping blade fixedly mounted on the mounting plate for scraping the inner side wall of the refrigeration tank.
3. The tea-seed oil processing refrigerating device of claim 2, wherein the scraper is made of a flexible material.
4. The tea seed oil processing refrigerating device as claimed in any one of claims 1 to 3, wherein the refrigerating tank comprises an outer tank body, an inner tank body and a sealing plate arranged at the upper end of the inner tank body, and the oil inlet is arranged on the sealing plate; the oil outlet is arranged at the bottom of the inner tank body and extends out of the outer tank body; the scraping mechanism is used for scraping the inner side wall of the inner tank body; an interlayer space is formed between the outer tank body and the inner tank body at intervals; and a spiral blade is arranged in the interlayer space, and a spiral flow channel for flowing of the refrigerating fluid is formed in the interlayer space through the spiral blade.
5. The tea seed oil processing refrigerating device according to claim 4, wherein the refrigerating mechanism comprises a liquid storage tank for storing refrigerating fluid, a water pump with a liquid inlet end communicated with the liquid storage tank, and a refrigerating unit for refrigerating the refrigerating fluid in the liquid storage tank; the liquid outlet end of the water pump is communicated with the upper part of the interlayer space through a liquid inlet pipe; the lower part of the interlayer space is communicated with the liquid storage tank through a liquid return pipe.
CN202121398051.6U 2021-06-22 2021-06-22 Refrigeration device is used in tea-seed oil processing Active CN215288681U (en)

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CN202121398051.6U CN215288681U (en) 2021-06-22 2021-06-22 Refrigeration device is used in tea-seed oil processing

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Application Number Priority Date Filing Date Title
CN202121398051.6U CN215288681U (en) 2021-06-22 2021-06-22 Refrigeration device is used in tea-seed oil processing

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117244510A (en) * 2023-11-20 2023-12-19 内蒙古美力坚科技化工有限公司 Amino C acid safe and efficient nitration treatment device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117244510A (en) * 2023-11-20 2023-12-19 内蒙古美力坚科技化工有限公司 Amino C acid safe and efficient nitration treatment device
CN117244510B (en) * 2023-11-20 2024-01-12 内蒙古美力坚科技化工有限公司 Amino C acid safe and efficient nitration treatment device

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